Face cleaning instrument

By incorporating a liquid reservoir into the connecting components and simplifying the tubing connections, the problem of insufficient cleansing effect in facial cleansing devices has been solved, resulting in more efficient deep skin cleansing and a better user experience.

CN120982913APending Publication Date: 2025-11-21GUANGDONG NEWDERMO BIOMEDICAL TECH CO LTD
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Patent Information

Application Number
CN202511027570.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Existing facial cleansing devices are insufficient in terms of cleaning effect and have a limited range of cleaning methods, making it difficult to meet consumers' high demand for deep skin cleansing.

Method used

A facial cleansing device was designed with a liquid storage chamber located in the connecting component, which shortens the path of the liquid to the foaming mechanism. The pump interface is located on one side of the connecting component, simplifying the pipeline connection. At the same time, the center of gravity of the handheld component and the facial cleansing component are close to each other, which enhances stability and comfort.

Benefits of technology

It improves the cleansing experience, enhances cleaning effectiveness and safety, reduces the risk of shaking and slipping, simplifies the internal structure, and improves ease of use and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of beauty equipment, and provides a face cleaning instrument. The face cleaning instrument comprises a face cleaning assembly, a bubble outlet mechanism and a handheld assembly. The face cleaning assembly is provided with an installation opening. The bubble outlet mechanism is mounted at the mounting opening; the handheld assembly comprises a connecting part and a handheld part, the connecting part is connected to the face cleaning assembly, the handheld part is connected to the connecting part, the connecting part is provided with a liquid storage cavity, the handheld part is provided with a mounting cavity, the mounting cavity is provided with a pump body, the pump body is provided with a first connector and a second connector, and the first connector and the second connector are arranged on the side facing the connecting part. The liquid storage cavity communicates with the first connector through a first pipeline, and the second connector communicates with the bubble outlet mechanism through a second pipeline. According to the face cleaning instrument provided by the embodiment of the invention, the liquid storage cavity is arranged in the connecting part, so that the path from the liquid storage bin to the bubble outlet mechanism is shortened, the bubble outlet time is shortened, and the use experience of a user is improved.
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Description

Technical Field

[0001] This invention relates to the field of beauty equipment technology, and more particularly to a facial cleansing device. Background Technology

[0002] With the continuous advancement of beauty devices, facial cleansing brushes, as a modern cosmetic and skincare product, have rapidly risen in the market in recent years, becoming a new favorite in the beauty industry. These products use rotating brush heads or vibration technology to deeply cleanse facial skin, removing dirt and dead skin cells, helping people achieve cleansing and whitening effects.

[0003] However, despite the widespread popularity of facial cleansing devices, existing devices still have some shortcomings in terms of cleansing effectiveness. Traditional facial cleansing devices, such as manual cleansing brushes or simple vibrating cleansing devices, have relatively simple cleansing methods, resulting in poor cleansing results.

[0004] Therefore, existing facial cleansing devices still need improvement in terms of cleansing effectiveness. The market needs a facial cleansing device that can more efficiently and thoroughly cleanse the deep layers of the skin to meet consumers' high demands for skin cleansing and beauty. Summary of the Invention

[0005] This application aims to solve at least one of the technical problems existing in the related art. To this end, this application proposes a facial cleansing device.

[0006] A facial cleansing device according to an embodiment of this application includes: A facial cleansing assembly includes a facial cleansing body and a foaming mechanism, wherein the facial cleansing body is provided with an installation port; and the foaming mechanism is installed in the installation port. A handheld assembly includes a connecting component and a handheld component. The connecting component is connected to the facial cleansing assembly, and the handheld component is connected to the connecting component. The connecting component has a liquid storage chamber, and the handheld component has a mounting chamber. A pump body is mounted in the mounting chamber. The pump body has a first interface and a second interface, which are located on the side facing the connecting component. The liquid storage chamber is connected to the first interface through a first pipe, and the second interface is connected to the foaming mechanism through a second pipe.

[0007] According to the embodiments of this application, the facial cleansing device has a liquid storage chamber disposed within the connecting component, shortening the path between the liquid storage tank and the foaming mechanism, thereby reducing foaming time and improving the user experience. Furthermore, placing the liquid storage chamber within the connecting component brings the center of gravity of the entire facial cleansing device closer to the cleansing assembly, i.e., the part held by the user during use. Both the first and second ports of the pump body are located on the side facing the connecting component, allowing the first and second pipes to be directly and smoothly connected without additional bends or turns.

[0008] According to an embodiment of the present application, the connecting component comprises a liquid storage bin and a first connecting member, the liquid storage bin is internally provided with the liquid storage cavity, the liquid storage bin and the first connecting member are smoothly connected to form the outer contour of the connecting component, the first connecting member is connected to the facial cleansing assembly, the liquid storage bin is connected to the first connecting member, and the handheld component is connected to the liquid storage bin.

[0009] According to an embodiment of the present application, the connecting component is provided with an avoiding passage for accommodating the driving component of the facial cleansing assembly, the first connecting member is internally hollow to form the avoiding passage, and the liquid storage bin is hollow to form the avoiding passage.

[0010] According to an embodiment of the present application, the liquid storage bin is in a ring structure, and part of the avoiding passage is arranged at the inner ring of the ring structure.

[0011] According to an embodiment of the present application, the liquid storage bin is in a notched ring structure, and part of the avoiding passage is arranged at the notch of the notched ring structure.

[0012] According to an embodiment of the present application, the liquid storage bin comprises a bottom plate, an outer wall and an inner wall, the outer wall and the inner wall are integrally connected, the bottom plate is detachably connected to the outer wall and the inner wall, the bottom plate, the outer wall and the inner wall enclose the liquid storage cavity, the bottom plate is mounted to the handheld component, the outer wall forms part of the outer contour of the connecting component, and the inner wall, away from the outer wall, encloses part of the avoiding passage.

[0013] According to an embodiment of the present application, the connecting component comprises a liquid storage cover, the outer wall is provided with a filling opening, the filling opening is communicated with the liquid storage cavity, and the liquid storage cover is openably and closably connected to the filling opening.

[0014] According to an embodiment of the present application, the inner wall is a frosted inner wall, and the outer wall is a transparent outer wall.

[0015] According to an embodiment of the present application, a sealing and waterproof member is arranged between the inner wall and the bottom plate, and / or a sealing and waterproof member is arranged between the outer wall and the bottom plate.

[0016] According to an embodiment of the present application, a battery is mounted in the mounting cavity, the battery is arranged side by side with the pump body, and the battery is electrically connected to the pump body and the driving component of the facial cleansing assembly.

[0017] Additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to make the technical solutions in the present application or the prior art clearer, the accompanying drawings needed in the embodiments or the prior art description will be briefly introduced. Obviously, the accompanying drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort based on these drawings.

[0019] Figure 1 is a structural schematic diagram of a cleansing instrument provided by an embodiment of the present application.

[0020] Figure 2 is one of sectional structural schematic diagrams of a cleansing instrument provided by an embodiment of the present application.

[0021] Figure 3 is another of sectional structural schematic diagrams of a cleansing instrument provided by an embodiment of the present application.

[0022] Figure 4 is a schematic diagram of an angle between a swing axis of a cleansing assembly of a cleansing instrument and a central axis of a handheld part provided by an embodiment of the present application.

[0023] Figure 5 is a schematic diagram of an angle between a first end and a second end of a liquid storage bin of a cleansing instrument provided by an embodiment of the present application.

[0024] Figure 6 is a schematic diagram of an angle between a first end and a second end of a first connecting piece of a cleansing instrument provided by an embodiment of the present application.

[0025] Figure 7 is a structural schematic diagram of a cleansing instrument provided by an embodiment of the present application.

[0026] Figure 8 is an exploded structural schematic diagram of a bubble generating mechanism of a cleansing instrument provided by an embodiment of the present application.

[0027] Figure 9 is one of structural schematic diagrams of a bubble generating mechanism provided by an embodiment of the present application.

[0028] Figure 10 is another of structural schematic diagrams of a bubble generating mechanism provided by an embodiment of the present application.

[0029] Figure 11 is an exploded structural schematic diagram of a bubble generating mechanism provided by an embodiment of the present application.

[0030] Figure 12 is an exploded structural schematic diagram of a cleansing assembly of a cleansing instrument provided by an embodiment of the present application.

[0031] Figure 13 is a sectional structural schematic diagram of a cleansing instrument provided by an embodiment of the present application.

[0032] Figure 14 is Figure 13 Figure 8 is a schematic view of a local enlarged structure of the cleansing device at A according to an embodiment of the present application.

[0033] Figure 15 Figure 9 is a schematic view of a front structure of the third body according to an embodiment of the present application.

[0034] Figure 16 Figure 10 is a schematic view of a back structure of the third body according to an embodiment of the present application.

[0035] Figure 17 Figure 11 is a schematic view of a front structure of the first body according to an embodiment of the present application.

[0036] Reference signs: 100, cleansing assembly; 1100, cleansing body; 1101, mounting port; 1200, first cleansing component; 1300, driving component; 1600, bubble outlet mechanism; 200, handheld assembly; 2100, connecting component; 2101, avoiding passage; 2110, liquid storage compartment; 2111, liquid storage cavity; 2112, bottom plate; 2113, side wall; 2114, outer wall; 2115, inner wall; 2118, charging port; 2119, liquid outlet; 2120, first connecting piece; 2140, liquid storage cover; 2200, handheld component; 2201, mounting cavity; 2300, pump body; 2310, first interface; 2320, second interface; 2400, battery. DETAILED DESCRIPTION

[0037] The embodiments of the present application will be further described below in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.

[0038] In the description of the embodiments of the present application, it should be noted that the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the embodiments of the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance.

[0039] In the description of the embodiments of the present application, it should be noted that unless specifically defined and limited, the terms "connected", "connected" should be understood in a broad sense, for example, it can be fixedly connected, and can also be detachably connected, wherein the fixedly connected can include the mode of integrally connected; it can be mechanically connected, and can also be electrically connected; it can be directly connected, and can also be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0040] In the embodiments of the present application, unless otherwise specifically defined and limited, the first feature is "on" or "under" the second feature, which can be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, the first feature can be directly above or obliquely above the second feature, or it can only mean that the horizontal height of the first feature is higher than that of the second feature. The first feature can be directly below or obliquely below the second feature, or it can only mean that the horizontal height of the first feature is less than that of the second feature.

[0041] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine the different embodiments or examples described in the present application and the features of the different embodiments or examples without contradiction.

[0042] The following will be described in combination with Figures 1-17 The present application describes a cleansing instrument.

[0043] According to the cleansing instrument proposed in the embodiments of the present application, please refer to Figures 1 to 3The facial cleanser comprises a facial cleanser assembly 100 and a handheld assembly 200, the facial cleanser assembly 100 comprises a facial cleanser main body 1100 and a bubble generating mechanism 1600, the facial cleanser main body 1100 is provided with a mounting port 1101, and the bubble generating mechanism 1600 is mounted in the mounting port 1101; the handheld assembly 200 comprises a connecting component 2100 and a handheld component 2200, the connecting component 2100 is connected to the facial cleanser assembly 100, the handheld component 2200 is connected to the connecting component 2100, the connecting component 2100 is provided with a liquid storage cavity 2111, and the handheld component 2200 is provided with a mounting cavity 2201; a pump body 2300 is mounted in the mounting cavity 2201, the pump body 2300 is provided with a first interface 2310 and a second interface 2320, the first interface 2310 and the second interface 2320 are arranged on a side facing the connecting component 2100, the liquid storage cavity 2111 is connected to the first interface 2310 through a first pipeline, and the second interface 2320 is connected to the bubble generating mechanism 1600 through a second pipeline.

[0044] According to the facial cleanser, the liquid storage cavity 2111 is arranged in the connecting component 2100, the path between the liquid storage cavity 2111 and the bubble generating mechanism 1600 is shortened, the bubble generating time is reduced, and the use experience of a user is improved. In addition, the liquid storage cavity 2111 is arranged in the connecting component 2100, so that the gravity center of the entire facial cleanser is closer to the facial cleanser assembly 100, i.e. the part held by the user during use. The first interface 2310 and the second interface 2320 of the pump body 2300 are both arranged on a side facing the connecting component 2100, so that the first pipeline and the second pipeline can be directly and smoothly connected without additional turning or bending.

[0045] In a conventional facial cleanser design, the liquid storage cavity 2111 is usually arranged at an end of the handheld component 2200 far away from the facial cleanser assembly 100, so that the liquid needs to pass through a long pipeline to reach the bubble generating mechanism 1600. In the present application, the liquid storage cavity 2111 is arranged in the connecting component 2100, i.e. close to the facial cleanser assembly 100, so that the flow path of the liquid from the liquid storage cavity 2111 to the bubble generating mechanism 1600 is significantly shortened.

[0046] The facial cleanser is aimed at improving the facial cleansing experience of a user. The facial cleanser mainly comprises a facial cleanser assembly 100 and a handheld assembly 200. The facial cleanser assembly 100 is arranged to directly contact the skin and is responsible for performing the cleaning task, and the bubble generating mechanism 1600 is responsible for converting the facial cleansing liquid in the liquid storage cavity 2111 into fine and rich foam to enhance the cleaning effect.

[0047] The handheld assembly 200 is the holding and operating part of the facial cleanser, which is composed of a connecting component 2100 and a handheld component 2200. The connecting component 2100 not only serves as a bridge connecting the facial cleansing assembly 100 and the handheld component 2200, but also has a liquid storage cavity 2111 built-in, which is used to store facial cleansing liquid. By placing the liquid storage cavity 2111 in the connecting component 2100, the center of gravity of the entire facial cleanser is closer to the facial cleansing assembly 100, i.e. the part held by the user during use. This enhances the stability of the facial cleanser during use, reduces the risk of shaking or falling due to unstable center of gravity, and improves the safety and comfort of use.

[0048] The handheld component 2200 is installed with a pump body 2300 and other components. The pump body 2300 is a device capable of generating pressure, which is connected to the liquid storage cavity 2111 and the bubble generating mechanism 1600 through two interfaces, i.e. a first interface 2310 and a second interface 2320. It is worth noting that both interfaces are located on the side facing the connecting component 2100. Such a layout allows the first pipeline and the second pipeline to be directly and smoothly connected without additional turns or bends, thus simplifying the internal structure of the facial cleanser.

[0049] It should be noted that the bubble generating mechanism 1600 is installed in the mounting port 1101, which can be rotatingly installed in the mounting port 1101 or fixedly installed in the mounting port 1101, and the specific installation method is not limited here.

[0050] According to an embodiment of the present application, the connecting component 2100 includes a liquid storage bin 2110 and a first connecting piece 2120. The liquid storage bin 2110 has a liquid storage cavity 2111 inside. The liquid storage bin 2110 and the first connecting piece 2120 are smoothly connected to form the outer contour of the connecting component 2100. The first connecting piece 2120 is connected to the facial cleansing assembly 100, the liquid storage bin 2110 is connected to the first connecting piece 2120, and the handheld component 2200 is connected to the liquid storage bin 2110.

[0051] Specifically, the first connecting piece 2120 is directly connected to the facial cleansing assembly 100, ensuring that the facial cleansing assembly 100 can be stably installed on the connecting component 2100. The liquid storage bin 2110 is connected to the other end of the first connecting piece 2120, forming the main part of the connecting component 2100. The handheld component 2200 is connected to the other side of the liquid storage bin 2110.

[0052] It can be understood that the liquid storage bin 2110 as a key component for storing cleansing liquid is internally provided with a liquid storage cavity 2111 for accommodating sufficient cleansing liquid for use by the user. The first connecting member 2120 plays an important role in connecting the liquid storage bin 2110 and the cleansing assembly 100. The first connecting member 2120 and the liquid storage bin 2110 are connected in a smooth transition manner, which not only makes the overall contour of the connecting member 2100 more smooth and beautiful, but also effectively reduces the stress concentration at the connection, thereby enhancing the overall strength and stability of the connecting member 2100, and the smooth transition connection facilitates the user to take the cleansing device.

[0053] According to an embodiment of the present application, the connecting member 2100 is provided with an avoiding passage 2101 for accommodating the driving member 1300 of the cleansing assembly 100. The first connecting member 2120 is internally hollow to form the avoiding passage 2101, and the liquid storage bin 2110 is also hollow to form the avoiding passage 2101.

[0054] By providing the avoiding passage 2101 in the connecting member 2100, the internal space of the connecting member 2100 can be fully utilized, and the driving member 1300 of the cleansing assembly 100 is prevented from interfering with the connecting member 2100, so as to ensure that the driving member 1300 of the cleansing assembly 100 can be smoothly installed and normally work.

[0055] Specifically, the avoiding passage 2101 is formed by the hollow part inside the first connecting member 2120 and the hollow part of the liquid storage bin 2110. The first connecting member 2120 as a bridge connecting the liquid storage bin 2110 and the cleansing assembly 100 is internally hollow, which not only reduces the weight, but also provides sufficient installation space for the driving member 1300. The hollow design of the liquid storage bin 2110 further expands the space range of the avoiding passage 2101, ensuring that the driving member 1300 can be completely accommodated inside the connecting member 2100.

[0056] During the working process of the cleansing device, the driving member 1300 is connected to the first cleansing member 1200 (mentioned later) of the cleansing assembly 100 through the avoiding passage 2101, and drives it to perform reciprocating swing movement or rotary movement, thereby realizing the cleansing effect. The design of the avoiding passage 2101 not only ensures the normal work of the driving member 1300, but also improves the stability and durability of the cleansing device.

[0057] According to an embodiment of the present application, the liquid storage bin 2110 has a ring structure, and part of the avoiding passage 2101 is arranged at the inner ring of the ring structure.

[0058] It can be understood that the liquid storage bin 2110 of the ring structure makes full use of the space. By setting the partial avoidance channel 2101 at the inner ring of the ring structure, we successfully integrate the installation space of the driving component 1300 and the liquid storage space, making the structure of the whole cleansing device more compact and reasonable.

[0059] According to an embodiment of the present application, the liquid storage bin 2110 is a notched ring structure, and the partial avoidance channel 2101 is arranged at the notch of the notched ring structure.

[0060] It can be understood that the design of the notched ring structure enables the liquid storage bin 2110 to maintain the stability of the ring structure while releasing part of the space through the notch, which facilitates the arrangement of the avoidance channel 2101.

[0061] In addition, the notched ring structure facilitates the film release of the curved liquid storage bin 2110, thereby reducing the manufacturing cost.

[0062] According to an embodiment of the present application, the liquid storage bin 2110 comprises a bottom plate 2112, an outer wall 2114 and an inner wall 2115, the outer wall 2114 and the inner wall 2115 are integrally connected, the bottom plate 2112 is detachably connected to the outer wall 2114 and the inner wall 2115, the bottom plate 2112, the outer wall 2114 and the inner wall 2115 enclose the liquid storage cavity 2111, the bottom plate 2112 is mounted on the handheld component 2200, the outer wall 2114 forms part of the outer contour of the connecting component 2100, and the inner wall 2115, away from the outer wall 2114, encloses part of the avoidance channel 2101.

[0063] It can be understood that the liquid storage bin 2110 is composed of three main parts: the bottom plate 2112, the outer wall 2114 and the inner wall 2115. The bottom plate 2112, as the bottom of the liquid storage cavity 2111, is detachably connected to the outer wall 2114 and the inner wall 2115, which facilitates the cleaning and maintenance of the liquid storage cavity 2111. At the same time, the bottom plate 2112 also serves as the connection point with the handheld component 2200 or other components, ensuring the stability and reliability of the whole cleansing device structure.

[0064] The outer wall 2114 is the outer structure of the liquid storage bin 2110, which not only plays a role in storing liquid, but also serves as part of the connecting component 2100, connecting the handheld component 2200 and the cleansing assembly 100, making the whole cleansing device more unified and coordinated in appearance.

[0065] The inner wall 2115 is an inner structure of the liquid storage compartment 2110, and is opposite to the outer wall 2114. The inner wall 2115 is designed to fully utilize the internal space of the liquid storage compartment 2110, and provides necessary space for the avoidance channel 2101. The avoidance channel 2101 is located on the side of the inner wall 2115 away from the outer wall 2114, ensuring smooth installation and operation of the driving component 1300 of the facial cleansing assembly 100.

[0066] According to an embodiment of the present application, the connecting component 2100 comprises a liquid storage cover 2140, and the outer wall 2114 is provided with a filling opening 2118, the filling opening 2118 being in communication with the liquid storage cavity 2111, and the liquid storage cover 2140 being openably and closably connected to the filling opening 2118.

[0067] The filling opening 2118 provided on the outer wall 2114 is in communication with the liquid storage cavity 2111, so that the user can easily add facial cleansing liquid or other liquid into the liquid storage cavity 2111. The liquid storage cover 2140 is designed to be openably and closably connected to the filling opening 2118, which ensures the sealing of the liquid storage cavity 2111 in the closed state and prevents leakage of the facial cleansing liquid or other liquid.

[0068] According to an embodiment of the present application, the bottom plate 2112 is provided with a liquid outlet 2119, and the liquid outlet 2119 is connected to the first interface 2310 of the pump body 2300.

[0069] According to an embodiment of the present application, the inner wall 2115 is a frosted inner wall, and the outer wall 2114 is a transparent outer wall.

[0070] According to an embodiment of the present application, a sealing and waterproof element is arranged between the inner wall 2115 and the bottom plate 2112, and / or a sealing and waterproof element is arranged between the outer wall 2114 and the bottom plate 2112.

[0071] According to an embodiment of the present application, the mounting cavity 2201 is mounted with a battery 2400, the battery 2400 and the pump body 2300 are arranged side by side, and the battery 2400 is electrically connected to the pump body 2300 and the driving component 1300 of the facial cleansing assembly 100.

[0072] It can be understood that the battery 2400 is mounted in the mounting cavity 2201 and arranged side by side with the pump body 2300. This layout makes the internal structure of the facial cleanser more compact and reduces unnecessary space waste. The battery 2400 provides stable and long-lasting power supply for the pump body 2300 and the facial cleansing assembly 100.

[0073] Specifically, the battery 2400 can be one of a disposable battery 2400 and a rechargeable battery 2400.

[0074] According to an embodiment of the present application, a facial cleanser is provided, which will be described below with reference to Figure 2 andFigure 4 , comprising: a cleansing assembly 100 and a handheld assembly 200, the cleansing assembly 100 comprising a cleansing main body 1100, a first cleansing component 1200 and a driving component 1300, the first cleansing component 1200 being swingably connected to the cleansing main body 1100, the driving component 1300 being connected to the cleansing main body 1100 and being adapted to drive the first cleansing component 1200 to swing relative to the cleansing main body 1100; the handheld assembly 200 comprising a connecting component 2100 and a handheld component 2200, the connecting component 2100 being connected to the cleansing assembly 100, the handheld component 2200 being connected to the connecting component 2100, and the handheld component 2200 and the connecting component 2100 being arranged at an angle; wherein an included angle between an oscillation axis of the cleansing assembly 100 and a central axis of the handheld component 2200 ranges from 90° to 150°.

[0075] According to the cleansing instrument of the embodiment of the present application, the included angle between the oscillation axis of the cleansing assembly 100 and the central axis of the handheld component 2200 ranges from 90° to 150°, which makes the user hold the handheld component 2200 more naturally during use, and the cleansing assembly 100 can cover more areas of the face, without the user frequently adjusting the holding posture or the angle of the cleansing instrument, thereby liberating the user's hands and improving the convenience of use.

[0076] And since the included angle between the oscillation axis of the cleansing assembly 100 and the central axis of the handheld component 2200 ranges from 90° to 150°, when the cleansing instrument is placed stably on the washstand, the user can directly place the face close to the first cleansing component 1200 to realize the cleaning of the face, thereby completely liberating the hands, and the user can do other things with the hands at this time.

[0077] The cleansing assembly 100 is the main part of the cleansing instrument, comprising the cleansing main body 1100, the first cleansing component 1200 and the driving component 1300. The cleansing main body 1100 is the support structure of the cleansing instrument, the first cleansing component 1200 is the cleaning component actually contacting the face, and the driving component 1300 is responsible for driving the first cleansing component 1200 to swing. Among them, the swing of the first cleansing component 1200 is a kind of reciprocating rotary motion.

[0078] The handheld assembly 200 comprises the connecting component 2100 and the handheld component 2200. The connecting component 2100 is used to connect the cleansing assembly 100 and the handheld component 2200, and the handheld component 2200 is the part actually held by the user. Among them, the geometric center line of the handheld component 2200 is the central axis of the handheld component 2200.

[0079] It can be understood that the liquid storage tank 2110 is used for storing cleaning liquid, and the liquid storage tank 2110 is located between the handheld component 2200 of the facial cleanser and the facial cleaning assembly 100. The liquid storage tank 2110 has sufficient capacity and sealing to ensure that the cleaning liquid does not leak or evaporate.

[0080] The angle between the central axis of the handheld component 2200 and the oscillation axis of the facial cleaning assembly 100 is in the range of 90° to 150°. Such a design makes it easier for the user to operate the facial cleanser, while reducing the fatigue of the wrist and arm.

[0081] It should be noted that the angle between the oscillation axis of the facial cleaning assembly 100 and the central axis of the handheld component 2200 can be 90°, 100°, 110°, 120°, 130°, 140°, 150°, which is not specifically limited here.

[0082] According to an embodiment of the present application, the connecting component 2100 includes a liquid storage tank 2110 and a first connecting piece 2120, the first end of the liquid storage tank 2110 is connected to the handheld component 2200, the second end of the liquid storage tank 2110 is connected to the first end of the first connecting piece 2120, the second end of the first connecting piece 2120 is connected to the facial cleaning assembly 100, the first end of the liquid storage tank 2110 and the second end of the liquid storage tank 2110 are opposite, and the first end of the liquid storage tank 2110 and the second end of the liquid storage tank 2110 are angularly arranged, and the first end of the first connecting piece 2120 and the second end of the first connecting piece 2120 are opposite.

[0083] The first end and the second end of the liquid storage tank 2110 are angularly arranged, which is designed to better fit the facial contour during use of the facial cleanser and improve the cleaning effect. At the same time, the angle arrangement also considers the comfort of the user's hand holding, reducing the fatigue when used for a long time.

[0084] The first connecting piece 2120 is a component that connects the liquid storage tank 2110 and the facial cleaning assembly 100. It ensures that other components remain stable during oscillation of the facial cleaning assembly 100.

[0085] According to an embodiment of the present application, please refer to Figure 5 The angle between the first end of the liquid storage tank 2110 and the second end of the liquid storage tank 2110 is 20° to 60°.

[0086] It should be noted that the angle between the first end of the liquid storage tank 2110 and the second end of the liquid storage tank 2110 can be 20°, 30°, 40°, 50°, 60°, which is not specifically limited here.

[0087] According to an embodiment of the present application, the liquid storage compartment 2110 is internally provided with a liquid storage cavity 2111. The liquid storage compartment 2110 comprises a bottom plate 2112 and a side wall 2113, and the bottom plate 2112 and the side wall 2113 form the liquid storage cavity 2111. The bottom plate 2112 is arranged at the first end of the liquid storage compartment 2110, and the side wall 2113 is perpendicular to the bottom plate 2112. The side wall 2113 has a distal side and a proximal side. The position with the smallest distance between the first end of the liquid storage compartment 2110 and the second end of the liquid storage compartment 2110 is the proximal side of the liquid storage compartment 2110, and the position with the largest distance between the first end of the liquid storage compartment 2110 and the second end of the liquid storage compartment 2110 is the distal side of the liquid storage compartment 2110. The bottom plate 2112 is provided with a liquid outlet 2119, and the liquid outlet 2119 is arranged on the side of the bottom plate 2112 close to the distal side.

[0088] The liquid storage compartment 2110 is internally provided with a liquid storage cavity 2111 for storing cleaning liquid. The liquid storage cavity 2111 is formed by the bottom plate 2112 and the side wall 2113 and forms a closed liquid storage space. The bottom plate 2112 is arranged at the first end of the liquid storage compartment 2110 and serves as the bottom support of the liquid storage cavity 2111. The side wall 2113 is perpendicular to the bottom plate 2112 and surrounds the bottom plate 2112 to form the liquid storage cavity 2111. The proximal side refers to the position with the smallest distance between the first end of the liquid storage compartment 2110 and the second end of the liquid storage compartment 2110. The distal side refers to the position with the largest distance between the first end of the liquid storage compartment 2110 and the second end of the liquid storage compartment 2110. In an embodiment of the present application, the liquid storage cavity 2111 forms a structure similar to a truncated cylinder, and the proximal side is the side with a shorter generatrix of the truncated cylinder, and the distal side is the side with a longer generatrix of the truncated cylinder.

[0089] The design of the proximal side and the distal side of the liquid storage compartment 2110 allows the liquid storage cavity 2111 to store more cleaning liquid in a limited space, thereby improving the space utilization. The liquid outlet 2119 is arranged on the side of the bottom plate 2112 close to the distal side, which can reduce the possibility of the liquid outlet 2119 being blocked and ensure that the facial cleaning assembly 100 can always obtain sufficient cleaning liquid during the cleaning process, thereby improving the cleaning effect.

[0090] According to an embodiment of the present application, the connecting component 2100 comprises a liquid storage cover 2140, and the liquid storage compartment 2110 is provided with a filling port 2118. The filling port 2118 communicates with the liquid storage cavity 2111, and the filling port 2118 is arranged on the side of the side wall 2113 close to the distal side. The liquid storage cover 2140 is openably and closably connected to the filling port 2118.

[0091] The main function of the liquid storage cover 2140 is to close the filling port 2118 of the liquid storage compartment 2110 to prevent the cleaning liquid from leaking. At the same time, the liquid storage cover 2140 also facilitates the user to open it to add cleaning liquid. The filling port 2118 is arranged on the side of the side wall 2113 of the liquid storage compartment 2110 close to the distal side. This design can facilitate the user to easily add cleaning liquid into the liquid storage cavity 2111 without tilting the liquid storage compartment 2110.

[0092] According to an embodiment of the present application, the connecting component 2100 is provided with an avoiding passage 2101 for accommodating the driving component 1300, the first connecting piece 2120 is internally hollow to form the avoiding passage 2101, the side wall 2113 comprises an outer wall 2114 and an inner wall 2115 which are integrally connected, and the bottom plate 2112 is detachably connected to the outer wall 2114 and the inner wall 2115, the bottom plate 2112, the outer wall 2114 and the inner wall 2115 enclose the liquid storage cavity 2111, and the inner wall 2115 away from the outer wall 2114 encloses part of the avoiding passage 2101.

[0093] The main function of the avoiding passage 2101 is to provide sufficient space to accommodate the driving component 1300 (such as a motor, a transmission mechanism, etc.) of the cleansing assembly 100, so as to avoid interference or collision when the driving component 1300 drives the first cleansing component 1200 to swing and work.

[0094] The first connecting piece 2120 plays a role of connecting the liquid storage bin 2110 and the cleansing assembly 100, and ensures the overall structural stability and working reliability of the cleansing instrument, and the first connecting piece 2120 is internally hollow to form part of the avoiding passage 2101.

[0095] The side wall 2113 comprises the outer wall 2114 and the inner wall 2115 which are integrally connected to form the side boundary of the liquid storage cavity 2111. The outer wall 2114 is in contact with other components (such as a shell) of the cleansing instrument, and plays a role of supporting and protecting the liquid storage cavity 2111. The inner wall 2115 extends towards the inside of the liquid storage cavity 2111 away from the outer wall 2114, and forms part of the avoiding passage 2101.

[0096] According to an embodiment of the present application, the liquid storage bin 2110 and the first connecting piece 2120 are smoothly and transitionally connected to form the outer contour of the connecting component 2100.

[0097] Specifically, the first connecting piece 2120 is directly connected to the cleansing assembly 100, and ensures that the cleansing assembly 100 can be stably mounted on the connecting component 2100. The liquid storage bin 2110 is connected to the other end of the first connecting piece 2120, and forms the main part of the connecting component 2100. The handheld component 2200 is connected to the other side of the liquid storage bin 2110.

[0098] It can be understood that the liquid storage bin 2110 as a key component for storing cleansing liquid is internally provided with a liquid storage cavity 2111 for accommodating sufficient cleansing liquid for use by the user. The first connecting piece 2120 plays an important role in connecting the liquid storage bin 2110 and the cleansing assembly 100. The first connecting piece 2120 and the liquid storage bin 2110 are connected in a smooth transition manner, which not only makes the overall contour of the connecting component 2100 more smooth and beautiful, but also effectively reduces the stress concentration at the connection, thereby enhancing the overall strength and stability of the connecting component 2100, and the smooth transition connection facilitates the user to take the cleansing device.

[0099] According to one embodiment of the present application, please refer to Figure 6 , the included angle between the first end of the first connecting piece 2120 and the second end of the first connecting piece 2120 is 10° to 60°.

[0100] It should be noted that the included angle between the first end of the first connecting piece 2120 and the second end of the first connecting piece 2120 can be 20°, 30°, 40°, 50°, 60°, which is not specifically limited here.

[0101] According to one embodiment of the present application, the first connecting piece 2120 includes a necked section and an expanded section, the necked section is connected to the expanded section, the necked section is connected to the liquid storage bin 2110, and the expanded section is connected to the cleansing assembly 100.

[0102] In one embodiment, the necked section and the expanded section are integrally formed, which can be realized by injection molding, stamping and the like.

[0103] It can be understood that the structure of large on both sides and small in the middle formed by the necked section and the expanded section facilitates the user to use the cleansing assembly 100 for facial cleaning.

[0104] According to the bubble outlet mechanism 1600 according to the embodiment of the present application, please refer to Figures 7 to 17 , comprising: a first bubble outlet component 1610 provided with a bubble outlet mounting cavity 1612 and a bubble inlet 1611, the bubble inlet 1611 being communicated with the bubble outlet mounting cavity 1612; a second bubble outlet component 1620 including a limiting portion 1626 and a bubble outlet rod 1629, the bubble outlet rod 1629 being connected to the limiting portion 1626, the bubble outlet rod 1629 being mounted in the bubble outlet mounting cavity 1612, the limiting rod and the inner wall of the bubble outlet mounting cavity 1612 forming a bubble outlet channel 1623, the limiting portion 1626 and the first bubble outlet component 1610 forming a bubble outlet 1621, the bubble outlet 1621 being communicated with the bubble outlet channel 1623.

[0105] According to the foam generating mechanism 1600 of the embodiment of the present application, the first foam generating component 1610 is stably connected with the second foam generating component 1620 through the foam generating mounting cavity 1612, the foam generating channel 1623 is formed between the limiting rod and the inner wall of the foam generating mounting cavity 1612, and the stable foam generation is ensured during the working process of the facial cleanser.

[0106] The first foam generating component 1610 serves as the basic structure of the foam generating mechanism 1600 and is provided with the foam generating mounting cavity 1612 and the foam inlet 1611. The foam generating mounting cavity 1612 provides a stable space for the mounting of the second foam generating component 1620, so that the second foam generating component 1620 can be accurately embedded therein and stably connected with the first foam generating component 1610. The foam inlet 1611 is an opening on the first foam generating component 1610, the foam inlet 1611 is connected with the foam generating mounting cavity 1612 and the outside or other related components, and the function of the foam inlet 1611 is to enable the liquid (such as facial cleanser) to smoothly enter the foam generating mounting cavity 1612 and provide raw materials for the generation of foam.

[0107] The second foam generating component 1620 cooperates with the first foam generating component 1610 to realize the foam generating function. The second foam generating component 1620 includes the limiting part 1626 and the foam generating rod 1629, the foam generating rod 1629 is connected to the limiting part 1626 and is mounted in the foam generating mounting cavity 1612 of the first foam generating component 1610.

[0108] During the working process of the foam generating mechanism 1600, the limiting part 1626 plays an important role. It not only positions and limits the foam generating rod 1629 to ensure that the foam generating rod 1629 is in the correct position and state in the foam generating mounting cavity 1612, but also forms the foam outlet 1621 with the first foam generating component 1610. At the same time, the foam generating rod 1629 and the inner wall of the foam generating mounting cavity 1612 form the foam generating channel 1623, which is the key path for the generation and flow of foam. The foam fluid enters through the foam inlet 1611 and flows along the foam generating channel 1623 to the foam outlet 1621, and is finally output to the outside through the foam outlet 1621.

[0109] According to the foam generating mechanism 1600 of the embodiment of the present application, through the ingenious design and cooperation of the first foam generating component 1610 and the second foam generating component 1620, the function of stable foam generation is realized. The first foam generating component 1610 provides a stable mounting basis for the second foam generating component 1620 through the foam generating mounting cavity 1612, which ensures the structural stability of the entire foam generating mechanism 1600. The foam generating channel 1623 formed between the foam generating rod 1629 and the inner wall of the foam generating mounting cavity 1612, and the foam outlet 1621 formed between the limiting part 1626 and the first foam generating component 1610, provide an orderly space and path for the flow and output of foam. This design enables stable foam generation during the working process of the facial cleanser.

[0110] According to one embodiment of the present application, the limiting part 1626 is provided with a plurality of bubble outlet grooves 1627 distributed radially along the bubble outlet rod 1629, and the bubble outlet grooves 1627 are communicated with the bubble outlet port 1621.

[0111] The limiting part 1626 is provided with a plurality of bubble outlet grooves 1627 distributed radially along the bubble outlet rod 1629. Radial distribution means that the bubble outlet grooves 1627 are arranged towards the four directions of the bubble outlet rod 1629. When the facial cleanser works to generate foam, the foam can be output from multiple directions around the bubble outlet rod 1629 at the same time, which can greatly expand the output range of the foam and make the foam more evenly distributed in the area to be cleaned.

[0112] According to one embodiment of the present application, the bubble outlet grooves 1627 are uniformly distributed around the bubble outlet rod 1629.

[0113] The uniformly distributed bubble outlet grooves 1627 can ensure that the foam is output at a relatively consistent flow rate and speed from all directions. Because when the foam flows in the bubble outlet channel 1623, it will flow to the bubble outlet port 1621 through each of the uniformly distributed bubble outlet grooves 1627, and there will be no situation of excessive or insufficient bubble output in a certain area, so that the output foam can more evenly cover the area to be cleaned, thereby improving the cleaning effect.

[0114] According to one embodiment of the present application, the first bubble outlet component 1610 is provided with one of a protruding part 1615 and a recessed part 1628, the limiting part 1626 is provided with the other one of the protruding part 1615 and the recessed part 1628, and the protruding part 1615 is installed in the recessed part 1628.

[0115] If the protruding part 1615 is arranged on the first bubble outlet component 1610, then the recessed part 1628 is arranged on the limiting part 1626 correspondingly; otherwise. When assembling the bubble outlet mechanism 1600, the protruding part 1615 on the first bubble outlet component 1610 is accurately inserted into the recessed part 1628 on the limiting part 1626, just like a puzzle, and the two can perfectly fit together. This fitting method not only makes the two components closely connected in structure, but also can effectively resist the interference of various external forces during the working process of the facial cleanser. Figure One

[0116] ​Meanwhile, the protruding part 1615 and the recessed part 1628 play the role of accurate guidance and positioning during assembly. The operator does not need to spend a lot of time for accurate alignment, but only needs to roughly align the protruding part 1615 with the recessed part 1628, and gently push to complete the installation, greatly improving the assembly efficiency and reducing the assembly difficulty. Moreover, this matching mode also has certain sealing performance. After the protruding part 1615 and the recessed part 1628 are closely fitted, a relatively sealed space is formed between them, which can effectively prevent the foam from leaking out from the connection part during the flow process.

[0117] According to an embodiment of the present application, the limiting part 1626 and the foam outlet rod 1629 are internally provided with through holes, and the through holes communicate with the foam outlet mounting cavity 1612.

[0118] The communication design of the through holes is of great significance for balancing the pressure distribution in the foam outlet mechanism 1600. During the flow of the foam, due to the different structures of the parts of the foam outlet mechanism 1600, pressure differences may be caused in different regions. For example, a low-pressure area may be formed near the foam outlet 1621 due to the rapid output of the foam, and the pressure of other parts of the foam outlet mounting cavity 1612 is relatively high. The existence of the through holes is like a pressure regulating valve, which allows the foam to flow between the high-pressure area and the low-pressure area, so that the pressure in the entire foam outlet mechanism 1600 gradually tends to be uniform.

[0119] After the facial cleanser is used for a period of time, foam, dirt, bacteria and the like are easily left in the foam outlet mechanism 1600. The traditional foam outlet mechanism 1600 cleaning may be relatively difficult, and multiple parts need to be disassembled for thorough cleaning. The facial cleanser of the present application can also be cleaned and discharged through the through holes in the middle when the foam enters the foam outlet mounting cavity 1612.

[0120] According to an embodiment of the present application, the first foam outlet part 1610 is provided with a foam inlet cavity 1616, the foam inlet cavity 1616 is arranged between the foam inlet 1611 and the foam outlet mounting cavity 1612, the foam inlet 1611 communicates with the foam inlet cavity 1616, the foam inlet cavity 1616 communicates with the foam outlet mounting cavity 1612, and the foam inlet cavity 1616 is arranged below the foam outlet mounting cavity 1612.

[0121] When the facial cleanser starts to work, the foam generating device rapidly generates a large amount of delicate foam. These foams first enter the foam inlet cavity 1616 of the first foam outlet part 1610 through the foam inlet 1611. After entering the foam inlet cavity 1616, the foam naturally flows downward under the action of gravity, gradually filling the entire foam inlet cavity 1616. In this process, the foam is fully mixed and stabilized in the foam inlet cavity 1616, so that the texture of the foam is more uniform and the bubble size is more consistent.

[0122] With the continuous entry of the foam, the pressure in the foam inlet cavity 1616 gradually rises. When the pressure reaches a certain level, the foam will flow smoothly from the foam outlet 1621 through the communication passage between the foam inlet cavity 1616 and the foam outlet installation cavity 1612, and finally flow outward along the foam outlet groove 1627. Due to the buffering and adjusting effect of the foam inlet cavity 1616, the foam can enter the foam outlet installation cavity 1612 in a more stable and uniform state, laying a good foundation for further processing in the foam outlet installation cavity 1612.

[0123] According to an embodiment of the present application, a cleansing assembly [1] comprises: A cleansing main body 1100, which is provided with a mounting opening 1101; A first cleansing component 1200, which is swingably connected to the cleansing main body 1100; The above-mentioned foam outlet mechanism 1600 is arranged in the mounting opening 1101 and connected to the first cleansing main body 1100; A driving component 1300, which is fixedly connected to the cleansing main body 1100 and used to drive the first cleansing component 1200 to swing relative to the cleansing main body 1100.

[0124] The cleansing main body 1100 is the main part of the cleansing assembly 100, and one or more mounting openings 1101 are arranged on the cleansing main body 1100 for mounting the foam outlet mechanism 1600. The shape and size of the mounting opening 1101 are matched with the shape of the foam outlet mechanism 1600 to ensure that the foam outlet mechanism 1600 can be stably fixed on the cleansing main body 1100.

[0125] The first cleansing component 1200 is the actual cleaning component that contacts the face, and the driving component 1300 is responsible for driving the first cleansing component 1200 to swing. The swing of the first cleansing component 1200 is a kind of reciprocating rotary motion.

[0126] The driving component 1300 is connected to the cleansing main body 1100 and is usually located inside or outside the cleansing main body 1100. It adopts electric, pneumatic or manual mode to provide power for the first cleansing component 1200, so that it can rotate relative to the cleansing main body 1100.

[0127] According to an embodiment of the present application, the first foam outlet structure is provided with a rotating interface 1614 connected to the output shaft of the driving component 1300, and the driving component 1300 is adapted to drive the foam outlet mechanism 1600 to swing to drive the first cleansing component 1200 to swing relative to the cleansing main body 1100. The connection between the driving component 1300 and the first foam outlet structure is tight to ensure that there is no loosening or falling off during rotation.

[0128] When the user starts the cleansing assembly 100, the driving component 1300 starts to work, driving the first cleansing component 1200 to rotate relative to the cleansing main body 1100. At the same time, the foam generating mechanism 1600 starts to generate foam, and the foam is evenly applied to the skin through the guidance of the shunt rod 1663 and the boss. With the rotation of the first cleansing component 1200, the foam can clean the skin more deeply, achieving the effect of efficient cleansing. The rotating interface 1614 can adopt a circular, square or other special-shaped interface structure to adapt to the shape and size requirements of the output shaft of the driving component 1300.

[0129] According to the cleansing assembly 100 proposed in the embodiment of the present application, please refer to Figures 1 to 11 , the cleansing assembly 100 includes a cleansing main body 1100, a foam generating mechanism 1600, a first cleansing component 1200, a second cleansing component 1500 and a driving component 1300, the cleansing main body 1100 is provided with a mounting port 1101; the foam generating mechanism 1600 is connected to the cleansing main body 1100; the first cleansing component 1200 is swingably connected to the cleansing main body 1100, and the first cleansing component 1200 is provided with a first avoiding hole 1202; the second cleansing component 1500 is connected to the cleansing main body 1100, and the second cleansing component 1500 is arranged between the cleansing main body 1100 and the first cleansing component 1200, and the second cleansing component 1500 is provided with a second avoiding hole 1501, and the foam generating mechanism 1600 is sequentially arranged in the mounting port 1101, the first avoiding hole 1202 and the second avoiding hole 1501; the driving component 1300 is connected to the cleansing main body 1100 and is adapted to drive the first cleansing component 1200 to swing relative to the second cleansing component 1500.

[0130] According to the cleansing assembly 100 of the embodiment of the present application, the foam generating mechanism 1600 sequentially passes through the mounting port 1101, the first avoiding hole 1202 and the second avoiding hole 1501 to directly act on the first cleansing component 1200, ensuring that the foam is rich and evenly distributed, improving the cleaning efficiency, and the swing of the first cleansing component 1200 simulates the massage effect of human hands, which can increase the comfort of the cleansing process.

[0131] It can be understood that the cleansing main body 1100 is the main supporting structure of the cleansing assembly 100, and the cleansing main body 1100 can be made of a solid and durable material to ensure stability during long-term use.

[0132] The foaming mechanism 1600 is a component for generating foam, and is connected to the cleansing main body 1100. The foaming mechanism 1600 can sequentially pass through the mounting port 1101 of the cleansing main body 1100, the first avoiding hole 1202 of the first cleansing component 1200, and the second avoiding hole 1501 of the second cleansing component 1500, so that the foam can directly act on the first cleansing component 1200, thereby improving the cleaning efficiency.

[0133] The first cleansing component 1200 is a cleansing component swingably connected to the cleansing main body 1100, and is used for directly contacting the face for cleaning. The first cleansing component 1200 can be made of soft and skin-friendly material. The swing design can increase the flexibility during the cleansing process, and better adapt to different face contours. The first avoiding hole 1202 can allow the foaming mechanism 1600 to pass through smoothly, and ensure that the first cleansing component 1200 is not hindered during the swing process.

[0134] The second cleansing component 1500 is a cleansing component connected to the cleansing main body 1100 and located between the cleansing main body 1100 and the first cleansing component 1200, and is used for increasing the cleaning area. The second cleansing component 1500 can be made of soft and skin-friendly material. Similarly, the second avoiding hole 1501 can allow the foaming mechanism 1600 to pass through smoothly, and ensure that the first cleansing component 1200 is not hindered during the swing process.

[0135] The driving component 1300 is connected to the cleansing main body 1100, and is used for driving the first cleansing component 1200 to swing relative to the second cleansing component 1500. The swing movement can simulate the effect of hand massage, and improve the comfort and cleaning effect of the cleansing process. The driving component 1300 is a component for driving the movement of the cleansing component, such as a motor, a transmission mechanism, etc.

[0136] According to one embodiment of the present application, the second cleansing component 1500 includes a second body 1510 and second bristles 1520. The second body 1510 is mounted to the cleansing main body 1100, and the second bristles 1520 are arranged on the second body 1510. The second bristles 1520 surround the first cleansing component 1200, and the second body 1510 is provided with the second avoiding hole 1501.

[0137] It can be understood that the second cleansing component 1500 comprises a second body 1510 and second bristles 1520. The second body 1510 is mounted on the cleansing body 1100. The second bristles 1520 are arranged on the second body 1510 and are made of soft and skin-friendly materials and are arranged around the first cleansing component 1200. This design can ensure that the facial skin can be brushed from different directions during the cleaning process, thereby improving the comprehensiveness and uniformity of cleaning. The second body 1510 is provided with a second avoiding hole 1501 for allowing the bubble mechanism 1600 to pass through smoothly.

[0138] In one embodiment, the second body 1510 and the second bristles 1520 are integrally formed and can be realized by injection molding, stamping or the like.

[0139] According to one embodiment of the present application, the first cleansing component 1200 comprises a first body 1210 and first bristles 1220, the first body 1210 is swingably connected to the cleansing body 1100, and the first bristles 1220 are arranged on the first body 1210. The first body 1210 is provided with the first avoiding hole 1202.

[0140] It can be understood that the first cleansing component 1200 comprises a first body 1210 and first bristles 1220. The first body 1210 is swingably connected to the cleansing body 1100, and the first avoiding hole 1202 is located on the first body 1210. The first bristles 1220 are arranged on the first body 1210, and the first bristles 1220 can be made of soft and skin-friendly materials, such as soft nylon fibers or natural plant fibers, to ensure that the skin will not be stimulated or damaged during the cleaning process.

[0141] In one embodiment, the first body 1210 and the first bristles 1220 are integrally formed and can be realized by injection molding, stamping or the like.

[0142] According to one embodiment of the present application, the first cleansing component 1200 is connected to the bubble mechanism 1600, and the driving component 1300 is adapted to drive the bubble mechanism 1600 to swing to drive the first cleansing component 1200 to swing relative to the cleansing body 1100.

[0143] The first cleansing component 1200 is directly connected to the bubble mechanism 1600, so that their swing paths will remain consistent, ensuring that the foam can be uniformly distributed on the first cleansing component 1200 during the cleaning process and the face is brushed all around.

[0144] According to an embodiment of the present application, the first cleaning component 1200 comprises a third body 1240, the first body 1210 is connected to the third body 1240, the third body 1240 is provided with a mounting groove 1241 along the edge of the first avoiding hole 1202, and the bubble generating mechanism 1600 is fixedly mounted in the mounting groove 1241.

[0145] It can be understood that the third body 1240 is used for connecting and supporting the first body 1210, the third body 1240 is provided with the mounting groove 1241, and the bubble generating mechanism 1600 is fixedly mounted in the mounting groove 1241 of the third body 1240.

[0146] The design of the mounting groove 1241 ensures that the bubble generating mechanism 1600 can be stably fixed on the cleaning assembly 100, avoiding shaking and falling off during swinging. At the same time, the mounting groove 1241 also provides sufficient support and protection for the bubble generating mechanism 1600, prolonging its service life.

[0147] In specific implementation, appropriate size and shape of the mounting groove 1241 can be selected according to actual needs, so as to ensure that the bubble generating mechanism 1600 can be stably fixed in the mounting groove 1241.

[0148] According to an embodiment of the present application, the shape of the mounting groove 1241 is one of a triangle, a quadrilateral, a pentagon, and a hexagon, and the shape of the assembling part 1618 is set according to the shape of the mounting groove 1241.

[0149] In specific implementation, appropriate shape and size of the mounting groove 1241 can be selected according to actual needs. For example, for the cleaning assembly 100 requiring higher stability and carrying capacity, the mounting groove 1241 in the shape of a pentagon or a hexagon can be selected; for the cleaning assembly 100 pursuing simplicity and beauty, the mounting groove 1241 in the shape of a quadrilateral can be selected.

[0150] The shape and size of the bubble generating mechanism 1600 need to match the mounting groove 1241, so as to ensure that the bubble generating mechanism 1600 can be stably mounted in the mounting groove 1241, avoiding shaking and falling off during installation.

[0151] According to an embodiment of the present application, one of the mounting hole 1243 and the mounting column 1211 is arranged on the side of the third body 1240 facing the first body 1210, and the other one of the mounting column 1211 and the mounting hole 1243 is arranged on the side of the first body 1210 facing the third body 1240.

[0152] Specifically, the third body 1240 is provided with a mounting hole 1243 or a mounting column 1211 on one side facing the first body 1210, and the first body 1210 is provided with a corresponding mounting column 1211 or mounting hole 1243 on one side facing the third body 1240. In actual application, different connection modes can be selected according to actual needs. For example, when the third body 1240 is provided with a mounting hole 1243, the first body 1210 should be provided with a corresponding mounting column 1211; vice versa.

[0153] According to one embodiment of the present application, the foam outlet mechanism 1600 includes a first foam outlet component 1610 and a second foam outlet component 1620, the first foam outlet component 1610 is connected to the second foam outlet component 1620, the first foam outlet component 1610 is provided with a foam inlet 1611, the second foam outlet component 1620 is provided with a foam outlet 1621, the first foam outlet component 1610 includes an assembly part 1618, and the assembly part 1618 is fixedly installed in the mounting groove 1241.

[0154] The first foam outlet component 1610 is provided with a foam inlet 1611, which is used to receive foam from a cleansing liquid or a foam generating device. The shape, size and position of the foam inlet 1611 can be designed according to the flowability and generating amount of the foam to ensure that the foam can smoothly enter the first foam outlet component 1610.

[0155] The second foam outlet component 1620 is provided with a foam outlet 1621, which is used to uniformly spray the refined foam on the user's facial skin. The shape, size and number of the foam outlet 1621 should be designed according to the facial contour and cleaning needs of the user to ensure that the foam can uniformly cover the whole face.

[0156] The first foam outlet component 1610 includes an assembly part 1618, which is used to fixedly install the first foam outlet component 1610 in the mounting groove 1241. The shape, size and position of the assembly part 1618 should match the mounting groove 1241 to ensure that the first foam outlet component 1610 can be stably installed on the third body 1240.

[0157] According to one embodiment [2] of the present application, a cleansing assembly 100 is provided according to the present application and applied to a cleansing instrument, which includes: The first cleansing component 1200 is provided with a first avoiding hole 1202. The bubble outlet mechanism 1600 is at least partially arranged in the first avoiding hole 1202, and the bubble outlet mechanism 1600 comprises a first bubble outlet component 1610 and a second bubble outlet component 1620. The second bubble outlet component 1620 is fixedly connected to the first side of the first cleansing component 1200, and the first bubble outlet component 1610 is fixedly connected to the second side of the first cleansing component 1200. The first side and the second side are opposite to each other. The first bubble outlet component 1610 is provided with a bubble outlet mounting cavity 1612 and a bubble inlet 1611. The second bubble outlet component 1620 is arranged in the bubble outlet mounting cavity 1612. The first bubble outlet component 1610 and the second bubble outlet component 1620 form a bubble outlet channel 1623 and a bubble outlet 1621 therebetween. The bubble inlet is used to connect the external liquid storage cavity and the bubble outlet channel 1623. The bubble outlet 1621 is used to deliver the foam in the bubble outlet channel 1623 to the first side of the first cleansing component 1200.

[0158] According to the cleansing assembly 100 provided by the embodiment of the present application, the first avoiding hole 1202 provides reasonable installation space for the bubble outlet mechanism 1600, so that the bubble outlet mechanism 1600 can be partially arranged in the first avoiding hole 1202. The second bubble outlet component 1620 is fixedly connected to the first side of the first cleansing component 1200, and the first bubble outlet component 1610 is fixedly connected to the second side of the first cleansing component 1200. The first bubble outlet component 1610 and the second bubble outlet component 1620 can ensure the stability of the bubble outlet mechanism 1600 during operation. When the cleansing instrument is running, the bubble outlet mechanism 1600 will not easily shake or shift due to vibration and other reasons, thereby ensuring the stability of the bubble outlet process and providing continuous and uniform foam for the user.

[0159] Meanwhile, the first bubble outlet component 1610 and the second bubble outlet component 1620 form the bubble outlet channel 1623 and the bubble outlet 1621 therebetween. The bubble outlet 1621 can deliver the foam to the first side of the first cleansing component 1200. When the user uses the cleansing instrument, the foam can directly act on the skin, so that the user can conveniently and quickly clean the skin and greatly improve the cleansing efficiency and bring a better cleansing experience to the user.

[0160] According to an embodiment of the present application, the first bubble outlet component 1610 is provided with one of an assembly protrusion 1617 and an assembly recess 1244, the first cleansing component 1200 is provided with the other one of the assembly protrusion 1617 and the assembly recess 1244, and the assembly protrusion 1617 is arranged in the assembly recess 1244.

[0161] The assembly protrusion 1617 is a protruding structural part on the first bubble outlet component 1610 or the first cleansing component 1200. The assembly protrusion 1617 can be a cylindrical shape, a cuboid shape, other special-shaped structures, etc. The assembly recess 1244 is a recessed structural part corresponding to the assembly protrusion 1617, and can exactly accommodate the assembly protrusion 1617 embedded therein.

[0162] In the assembly process, the operator only needs to accurately install the assembly protrusion 1617 on the first bubble generating component 1610 into the assembly groove 1244 on the first face cleaning component 1200, or vice versa, to easily achieve the connection of the two.

[0163] According to an embodiment of the present application, the second bubble generating component 1620 comprises a limiting portion 1626 and a bubble generating rod 1629, the bubble generating rod 1629 is connected to the limiting portion 1626, the bubble generating rod 1629 is installed in the bubble generating installation cavity 1612, a bubble generating channel 1623 is formed between the limiting rod and the inner wall of the bubble generating installation cavity 1612, a bubble generating opening 1621 is formed between the limiting portion 1626 and the first bubble generating component 1610, and the bubble generating opening 1621 communicates with the bubble generating channel 1623.

[0164] In the assembly process, the limiting portion 1626 can cooperate with the first bubble generating component 1610 to stably support and position the bubble generating rod 1629, prevent the bubble generating rod 1629 from shaking or shifting during work, and ensure the stability of the entire second bubble generating component 1620 in the bubble generating installation cavity 1612.

[0165] The bubble generating rod 1629 is connected to the limiting portion 1626 and has a rod-shaped structure. The bubble generating installation cavity 1612 provides a relatively independent and stable installation space for the bubble generating rod 1629, and the bubble generating rod 1629 is tightly fitted with the inner wall of the bubble generating installation cavity 1612 to form the bubble generating channel 1623 therebetween.

[0166] The shape and size of the bubble generating channel 1623 are not fixed and can be flexibly adjusted by adjusting the relative position and shape of the limiting portion 1626 and the inner wall of the bubble generating installation cavity 1612.

[0167] According to an embodiment of the present application, the first bubble generating component 1610 is provided with one of a protruding portion 1615 and a recessed portion 1628, the limiting portion 1626 is provided with the other of the protruding portion 1615 and the recessed portion 1628, and the protruding portion 1615 is installed in the recessed portion 1628.

[0168] Specifically, one of the protruding portion 1615 and the recessed portion 1628 is provided on the first bubble generating component 1610, and the other of the protruding portion 1615 and the recessed portion 1628 is provided on the limiting portion 1626. The protruding portion 1615 is a protruding structural part on the first bubble generating component 1610 or the limiting portion 1626, and can be designed in different shapes such as a cylindrical shape, a conical shape, or a rectangular shape. The recessed portion 1628 is a recessed structural part corresponding thereto, and has a shape and size matched with the protruding portion 1615 and capable of being tightly fitted with the protruding portion 1615.

[0169] In the assembly process, the operator only needs to accurately install the protrusion 1615 on the first foam outlet component 1610 in the groove part 1628 on the limiting part 1626 (or install the protrusion 1615 on the limiting part 1626 in the groove part 1628 on the first foam outlet component 1610), so as to easily realize the connection of the two.

[0170] According to an embodiment of the present application, the limiting part 1626 is provided with a plurality of foam outlet grooves 1627 distributed along the radial direction of the foam outlet rod 1629, and the foam outlet grooves 1627 are communicated with the foam outlet 1621.

[0171] The foam outlet grooves 1627 can be regular rectangular grooves, trapezoidal grooves or arc-shaped grooves, and the specific shape can be optimized according to the actual use demand and the foam output effect.

[0172] The foam outlet grooves 1627 are uniformly distributed along the radial direction of the foam outlet rod 1629, which can ensure that the foam can be uniformly gathered from all directions to the foam outlet 1621. Compared with the traditional single output channel, this multi-directional output mode avoids the accumulation of foam in a certain local area, so that the output of the foam is more uniform and smooth, greatly improving the overall efficiency of the foam output.

[0173] In addition, from the aspect of structural stability, these foam outlet grooves 1627 distributed along the radial direction of the foam outlet rod 1629 also play a role in enhancing the structural strength of the limiting part 1626. In the working process, the foam outlet mechanism 1600 will be subjected to various forces, such as impact force generated by liquid flow, external force generated by vibration of the cleansing instrument, etc. The foam outlet grooves 1627 are like reinforcing ribs built on the limiting part 1626, which can effectively disperse these stresses and reduce the possibility of deformation or damage of the limiting part 1626 due to stress. At the same time, this design also makes the connection of the limiting part 1626 and the foam outlet rod 1629 more stable, ensures the stability of the entire foam outlet structure in the working process, prolongs the service life of the foam outlet mechanism 1600, and reduces the use cost of the user.

[0174] The foam outlet grooves 1627 are closely communicated with the foam outlet 1621, forming a complete foam output system. The foam is smoothly gathered to the foam outlet 1621 through the foam outlet grooves 1627, and then output from the foam outlet 1621 to the first side of the first cleansing component 1200, providing cleaning service for the user. This ingenious design fully embodies the innovation and practicality of the present application in the design of the foam outlet mechanism 1600, and can meet the needs of users for efficient and high-quality cleansing products.

[0175] According to an embodiment of the present application, one end of the first foam outlet component 1610 towards the first cleansing component 1200 is provided with a polygonal connecting structure, and the first cleansing component 1200 is correspondingly provided with a polygonal matching structure, and the polygonal connecting structure is installed in the polygonal matching structure.

[0176] A polygonal connecting structure is arranged at one end of the first foam generating component 1610 towards the first cleansing component 1200. The polygonal connecting structure can be a common triangle, quadrilateral, pentagon, hexagon, etc., or a more complex polygon. The specific shape can be determined according to actual use requirements, foam output, and overall structure design of the cleansing device, etc.

[0177] A polygonal matching structure is arranged on the first cleansing component 1200. The polygonal matching structure has a complementary shape and size to the polygonal connecting structure of the first foam generating component 1610.

[0178] The close engagement of the polygonal connecting structure and the polygonal matching structure can tightly fix the two components together like a “wedge”, effectively resist the interference of external forces, and ensure that the first foam generating component 1610 and the first cleansing component 1200 always maintain a stable connection state, ensuring that the foam can be continuously and stably output.

[0179] According to one embodiment of the present application [3], please refer to Figures 1 to 7 The cleansing assembly 100 includes a cleansing main body 1100, a first cleansing component 1200, a second cleansing component 1500, a driving component 1300, and a first light therapy component 1400. The first cleansing component 1200 is connected to the cleansing main body 1100. The second cleansing component 1500 is connected to the cleansing main body 1100 and is arranged between the cleansing main body 1100 and the first cleansing component 1200. The first cleansing component 1200 is arranged in the middle of the second cleansing component 1500. The driving component 1300 is connected to the cleansing main body 1100 and is adapted to drive the first cleansing component 1200 to swing relative to the cleansing main body 1100. The first light therapy component 1400 is connected to the cleansing main body 1100. The first cleansing component 1200 is provided with a first light transmission hole 1203, and the light of the first light therapy component 1400 is adapted to pass through the first light transmission hole 1203 to illuminate the user.

[0180] The cleansing assembly 100 according to the embodiment of the present application combines light therapy and physical massage to improve the cleansing experience of the user.

[0181] The cleansing main body 1100 is responsible for connecting and supporting other components.

[0182] The first cleansing component 1200 is connected to the cleansing main body 1100 and is arranged in the middle of the second cleansing component 1500. The first cleansing component 1200 can be made of soft and elastic material to ensure that it will not cause any harm to the user's skin during cleaning.

[0183] The second cleansing component 1500 is connected to the cleansing main body 1100 and is located between the cleansing main body 1100 and the first cleansing component 1200. The second cleansing component 1500 has a wide coverage and can improve the cleaning efficiency. At the same time, it can also support the first cleansing component 1200 and disperse the pressure, ensuring the comfort and stability of the entire cleansing process.

[0184] The driving component 1300 is connected to the cleansing main body 1100 and is responsible for driving the first cleansing component 1200 to swing relative to the cleansing main body 1100. This swinging design not only enhances the cleaning effect, but also simulates the feeling of hand massage, so that the user can enjoy a more comfortable cleansing experience during use.

[0185] The first light therapy component 1400 is connected to the cleansing main body 1100 and emits light to the user's face through the first light transmission hole 1203 provided on the first cleansing component 1200. The light therapy component can emit light of a specific wavelength for light therapy treatment of the skin. This treatment method can improve the skin condition, such as reducing acne and lightening spots, so that the user can enjoy the effect of beauty and skin care while cleaning.

[0186] According to the cleansing assembly 100 provided in the embodiment of the present application, please refer to Figures 1 to 6 The cleansing assembly 100 includes a cleansing main body 1100, a foam generating mechanism 1600, a first cleansing component 1200, a second cleansing component 1500, and a driving component 1300. The cleansing main body 1100 is provided with a mounting port 1101. The foam generating mechanism 1600 is connected to the cleansing main body 1100. The first cleansing component 1200 is swingably connected to the cleansing main body 1100, and is provided with a first avoiding hole 1202. The second cleansing component 1500 is connected to the cleansing main body 1100, and is located between the cleansing main body 1100 and the first cleansing component 1200. The second cleansing component 1500 is provided with a second avoiding hole 1501. The foam generating mechanism 1600 is sequentially arranged in the mounting port 1101, the first avoiding hole 1202, and the second avoiding hole 1501. The driving component 1300 is connected to the cleansing main body 1100 and is adapted to drive the first cleansing component 1200 to swing relative to the second cleansing component 1500.

[0187] According to the cleansing assembly 100 provided in the embodiment of the present application, the foam generating mechanism 1600 directly acts on the first cleansing component 1200 by sequentially passing through the mounting port 1101, the first avoiding hole 1202, and the second avoiding hole 1501, ensuring that the foam is rich and uniformly distributed, improving the cleaning efficiency, and the swinging of the first cleansing component 1200 simulates the hand massage effect, which can increase the comfort of the cleansing process.

[0188] It can be understood that the face cleaning main body 1100 is the main supporting structure of the face cleaning assembly 100, and the face cleaning main body 1100 can be made of a strong and durable material to ensure stability during long-term use.

[0189] The foaming mechanism 1600 is a component for generating foam, and the foaming mechanism 1600 is connected to the face cleaning main body 1100. The foaming mechanism 1600 can be sequentially arranged through the mounting port 1101 of the face cleaning main body 1100, the first avoiding hole 1202 of the first face cleaning component 1200, and the second avoiding hole 1501 of the second face cleaning component 1500. This ensures that the foam can directly act on the first face cleaning component 1200, thereby improving the cleaning efficiency.

[0190] The first face cleaning component 1200 is a face cleaning component swingably connected to the face cleaning main body 1100, and is used for directly contacting the face for cleaning. The first face cleaning component 1200 can be made of a soft and skin-friendly material. This swing design can increase the flexibility during the face cleaning process, and better adapt to different face contours. The first avoiding hole 1202 can allow the foaming mechanism 1600 to pass through smoothly, and at the same time ensure that the first face cleaning component 1200 will not be hindered during the swing process.

[0191] The second face cleaning component 1500 is a face cleaning component connected to the face cleaning main body 1100 and located between the face cleaning main body 1100 and the first face cleaning component 1200, and is used for increasing the cleaning area. The second face cleaning component 1500 can be made of a soft and skin-friendly material. Similarly, the second avoiding hole 1501 can allow the foaming mechanism 1600 to pass through smoothly, and at the same time ensure that the first face cleaning component 1200 will not be hindered during the swing process.

[0192] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for some technical features. These modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A cleansing device, characterized in that, The application relates to a face cleaning device, which comprises a face cleaning assembly (100) and a handheld assembly (200). The face cleaning assembly (100) comprises a face cleaning main body (1100) and a bubble generating mechanism (1600), the face cleaning main body (1100) is provided with a mounting port (1101), and the bubble generating mechanism (1600) is mounted in the mounting port (1101). The handheld assembly (200) comprises a connecting component (2100) and a handheld component (2200), the connecting component (2100) is connected to the face cleaning assembly (100), the handheld component (2200) is connected to the connecting component (2100), the connecting component (2100) is provided with a liquid storage cavity (2111), the handheld component (2200) is provided with a mounting cavity (2201), a pump body (2300) is mounted in the mounting cavity (2201), the pump body (2300) is provided with a first interface (2310) and a second interface (2320), the first interface (2310) and the second interface (2320) are arranged on one side facing the connecting component (2100), the liquid storage cavity (2111) is communicated with the first interface (2310) through a first pipeline, and the second interface (2320) is communicated with the bubble generating mechanism (1600) through a second pipeline.

2. The cleansing device of claim 1, wherein, The connecting component (2100) comprises a liquid storage bin (2110) and a first connecting piece (2120), the liquid storage bin (2110) is internally provided with the liquid storage cavity (2111), the liquid storage bin (2110) and the first connecting piece (2120) are smoothly and transitionally connected to form the external contour of the connecting component (2100), the first connecting piece (2120) is connected to the face cleaning assembly (100), the liquid storage bin (2110) is connected to the first connecting piece (2120), and the handheld component (2200) is connected to the liquid storage bin (2110).

3. The cleansing device of claim 2, wherein, The connecting component (2100) is provided with an avoiding channel (2101) for accommodating a driving component (1300) of the face cleaning assembly (100), the first connecting piece (2120) is internally hollow to form the avoiding channel (2101), and the liquid storage bin (2110) is hollow to form the avoiding channel (2101).

4. The cleansing device of claim 3, wherein, The liquid storage bin (2110) is in a ring structure, and part of the avoiding channel (2101) is arranged in an inner ring of the ring structure.

5. The cleansing device of claim 3, wherein, The liquid storage bin (2110) is in a notched ring structure, and part of the avoiding channel (2101) is arranged in a notch of the notched ring structure.

6. The cleansing device according to claim 4 or 5, characterized in that The liquid storage bin (2110) comprises a bottom plate (2112), an outer wall (2114) and an inner wall (2115), the outer wall (2114) and the inner wall (2115) are integrally connected, the bottom plate (2112) is detachably connected to the outer wall (2114) and the inner wall (2115), the bottom plate (2112), the outer wall (2114) and the inner wall (2115) surround the liquid storage cavity (2111), the bottom plate (2112) is installed on the handheld component (2200), the outer wall (2114) forms part of the outer contour of the connecting component (2100), and the inner wall (2115) surrounds part of the avoiding channel (2101) away from the outer wall (2114).

7. The cleansing device of claim 6, wherein, The connecting component (2100) comprises a liquid storage cover (2140), the outer wall (2114) is provided with a filling port (2118), the filling port (2118) communicates with the liquid storage cavity (2111), and the liquid storage cover (2140) is openably and closably connected to the filling port (2118).

8. The cleansing device of claim 6, wherein, The inner wall (2115) is a frosted inner wall, and the outer wall (2114) is a transparent outer wall.

9. The cleansing device of claim 6, wherein, Sealing and waterproof elements are arranged between the inner wall (2115) and the bottom plate (2112), and / or sealing and waterproof elements are arranged between the outer wall (2114) and the bottom plate (2112).

10. The cleansing device of any one of claims 1 to 5, wherein, The mounting cavity (2201) is mounted with a battery (2400), the battery (2400) and the pump body (2300) are arranged side by side, and the battery (2400) is electrically connected to the pump body (2300) and the driving component (1300) of the cleansing component (100).

Citation Information

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